Chlorophyll

Summarized by Plex Health
Last Updated: 09 May 2022
near infrared fluorescent chlorophyll nanoscale liposomes for sentinel lymph node mapping. "near infrared fluorescent chlorophyll nanoscale liposomes for sentinel lymph node mapping.", by Fan L, Wu Q, Chu M. f2-ijn-7-3071: Bright field and fluorescence of chlorophyll dispersed in water before and after liposome encapsulation. (A) Bright field images taken using a digital color camera and fluorescent images taken using the in vivo imaging system:...

Description of Chlorophyll a: Phytoplankton are microscopic plants at the base of most marine food webs and generate virtually half of the Earth's oxygen. One way we estimate the number of phytoplankton in the ocean is by determining the quantity of chlorophyll a in the water. Chlorophyll a is a green pigment that the phytoplankton use to take in sunshine. The amount of chlorophyll a in surface area waters can be determined by gauging the color of the water which can be seen by sensing units on satellites precede virtually like your eyes see the color of the ocean. From a human viewpoint, high worths of chlorophyll a can be excellent or bad, based on the linked phytoplankton species. Summary of time collection: This time series shows the ordinary concentration degrees of chlorophyll for Alaska's Eastern Bering Sea region. Summary of gauge: The gauge value of 65 shows that in between 2016 and 2020 the ordinary focus levels of chlorophyll a in Alaska's Eastern Bering Sea region were a little more than the long term average of all chlorophyll focus degrees in between 1998 and 2020. 25, 50: Chlorophyll a was somewhat less than the long-term mean state. COPEPOD established the annual Large Marine Ecosystem chlorophyll a concentrations making use of mapped, regular monthly composites of chlorophyll a focus as determined from gleam measurements made by the SeaWiFS and MODIS-Aqua satellite sensors. Yearly means for each LME for every year were computed from the standard of the LME 12 month-to-month methods in that year. The total National Annual Mean was computed as the average of all LME yearly ways. Description of gauge: The gauge value of 57 suggests that between 2016 and 2020 the typical focus degrees of chlorophyll a in the Gulf of Alaska area were slightly more than the long-term typical of all chlorophyll focus levels between 1998 and 2020. COPEPOD determined the yearly Large Marine Ecosystem chlorophyll a concentrations utilizing mapped, regular monthly compounds of chlorophyll a concentration as calculated from gleam dimensions made by the SeaWiFS and MODIS-Aqua satellite sensors. Annual methods for each and every LME for each and every year were computed from the standard of the LME 12 regular monthly means in that year. Simply put, small changes in concentration when amounts are relatively low can indicate a very large proportional change in the phytoplankton whereas the same change in absolute focus when concentrations are reasonably large is less significant. Summary of time series: This time series reveals the typical concentration levels of chlorophyll for the Hawai i area. Summary of gauge: The gauge value of 35 shows that in between 2016 and 2020 the typical concentration levels of chlorophyll a in the Hawai i region were substantially lower than the lengthy term typical of all chlorophyll focus degrees between 1998 and 2020. COPEPOD determined the annual Large Marine Ecosystem chlorophyll a focus using mapped, month-to-month compounds of chlorophyll a focus as calculated from radiance dimensions made by the SeaWiFS and MODIS-Aqua satellite sensing units. Annual means for each and every LME for every year were calculated from the average of the LME 12 monthly means in that year. The total National Annual Mean was calculated as the standard of all the LME yearly means. In other words, small changes in focus when quantities are relatively low can indicate a very huge proportional change in the phytoplankton whereas the same change in outright concentration when concentrations are fairly large is less purposeful.

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PubChem - CovalentUnitCount

(Table source)
CIDMolecularFormulaMolecularWeightCanonicalSMILESIsomericSMILESInChIInChIKeyIUPACNameXLogPExactMassMonoisotopicMassTPSAComplexityChargeHBondDonorCountHBondAcceptorCountRotatableBondCountHeavyAtomCountIsotopeAtomCountAtomStereoCountDefinedAtomStereoCountUndefinedAtomStereoCountBondStereoCountDefinedBondStereoCountUndefinedBondStereoCountCovalentUnitCount
12085802C55H72MgN4O5893.5CCC1=C(C2=NC1=CC3=C(C4=C([N-]3)C(=C5C(C(C(=N5)C=C6C(=C(C(=C2)[N-]6)C=C)C)C)CCC(=O)OCC=C(C)CCCC(C)CCCC(C)CCCC(C)C)C(C4=O)C(=O)OC)C)C.[Mg+2]CCC1=C(C2=NC1=CC3=C(C4=C([N-]3)C(=C5[[email protected]]([[email protected]@H](C(=N5)C=C6C(=C(C(=C2)[N-]6)C=C)C)C)CCC(=O)OC/C=C(\C)/CCC[[email protected]](C)CCC[[email protected]](C)CCCC(C)C)[[email protected]](C4=O)C(=O)OC)C)C.[Mg+2]InChI=1S/C55H73N4O5.Mg/c1-13-39-35(8)42-28-44-37(10)41(24-25-48(60)64-27-26-34(7)23-17-22-33(6)21-16-20-32(5)19-15-18-31(3)4)52(58-44)50-51(55(62)63-12)54(61)49-38(11)45(59-53(49)50)30-47-40(14-2)36(9)43(57-47)29-46(39)56-42;/h13,26,28-33,37,41,51H,1,14-25,27H2,2-12H3,(H-,56,57,58,59,61);/q-1;+2/p-1/b34-26+;/t32-,33-,37+,41+,51-;/m1./s1ATNHDLDRLWWWCB-AENOIHSZSA-Mmagnesium;methyl (3R,21S,22S)-16-ethenyl-11-ethyl-12,17,21,26-tetramethyl-4-oxo-22-[3-oxo-3-[(E,7R,11R)-3,7,11,15-tetramethylhexadec-2-enoxy]propyl]-23,25-diaza-7,24-diazanidahexacyclo[18.2.1.15,8.110,13.115,18.02,6]hexacosa-1,5,8(26),9,11,13(25),14,16,18,20(23)-decaene-3-carboxylate892.5353131892.535313196.42130009226505501102
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